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The University of Vienna invites applications for the University assistant predoctoral position within the MATE platform at the Faculty of Physics. You will contribute to 2.5D materials design and spectroscopic studies, collaborating with a multidisciplinary team to push the boundaries of nanoscale materials for optoelectronics.
We seek candidates with a master's in physics or related field, hands-on Raman spectroscopy experience, and strong communication in English.
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The University of Vienna is a community of almost 11,000 individuals, including approximately 7,700 academic staff members, who passionately pursue answers to the profound questions that shape our future. They represent individuals driven by curiosity and a relentless pursuit of excellence. With us, they find the space to try things out and unfold their potential. Are you inspired by their passion and determination? We are currently seeking a/an
51 Faculty of Physics
Job ID:6044
Explore and teach at the University of Vienna, where more than 7,500 academics thrive on curiosity in continuous exploration and help us better understand our world. Does this sound like you? Then join our accomplished team!
The Group Electronic Properties of Materials at the Faculty of Physics at the University of Vienna searches excellent candidates for the subgroup Low Dimensional Quantum Solids. The Group of Electronic Properties of Materials at the Faculty of Physics is a committed team of scientists with the main research focus on low dimensional quantum solids. We dedicate a great part of our research to the growth and spectroscopic analysis of pristine and doped carbon-based molecular structures to unravel their underlying electron transport and optical properties. We aim at understanding which parameters control their unique properties to subsequently engineer them to access their full application potential.
You will be part of MATE, a multidisciplinary research platform of the University of Vienna that unites expertise across synthetic chemistry, materials physics, quantum technologies, and nanomaterial functionalization to develop next-generation functional nanomaterials with tailored quantum, electronic and magnetic properties.
Your job will be focused on establishing a route for 2.5 D materials design using a customized optimization loop embracing a spectroscopic quest that allows challenging to-date tangible limits of materials science accessing their application potential in optoelectronics. For emerging low-dimensional (D) materials controlling the function at an atomistic scale is the key for their application in optoelectronics. Among them, 2.5 D materials (a combination of (twisted) layered heterostructures and nanotubes) exhibit outstanding properties and functionality by internal tailoring interfaces making them an extremely promising new materials platform. Such a tailoring of layered 2D materials by atomistic stacking in specific twist angle and combining them with 1D quantum wires in advanced hybrid structures offer unique possibilities. Especially, the control of basic correlation effects by the twist angle and doping of interfaces & the concomitant understanding of their influence on charge transfer & hybridization are crucial.
MATE offers a vibrant and intellectually stimulating research environment where curiosity and scientific excellence thrive. You'll be part of a dynamic, collaborative community of researchers who are passionate about pushing the boundaries of materials science. Our atmosphere balances ambitious research goals with mutual support and collegiality, fostering both independent thinking and teamwork. The 5 groups involved in MATE maintain an active research culture with regular seminars, group discussions, and knowledge exchange that keep you connected to the latest developments. We all value open communication, creative problem-solving, and a healthy work-life balance, creating an environment where you can grow both professionally and personally. International collaboration is at the heart of what we do, providing you with opportunities to build a global network while working alongside diverse, talented colleagues who share your enthusiasm for cutting-edge science.
Our group focuses strongly on the development of new techniques combining high spatial, energy & momentum (q)-resolution for nanospectroscopic analysis at all energy scales. This enables us to investigate dispersion and lifetime of primary excitations in nanomaterials such as TMDC-heterostructures and nanotubes. This facilitates the control on quantum phases, like charge-density waves and superconductivity, to engineer new materials for energy (e.g. batteries, (opto-)electronic devices in electrons).
You actively participate in research, teaching & administration, which means:
We look forward to new personalities in our team!
The University of Vienna has an anti-discriminatory employment policy and attaches great importance to equal opportunities , the advancement of women anddiversity .
We place particular emphasis on enhancing women’s representation among the academic and general university staff, particularly in leadership roles, and therefore expressly encourage qualified women to apply.
Given equal qualifications, preference will be given to female candidates.